CARBON DIOXIDE ABSORBENT AND METHOD OF USING THE SAME
    13.
    发明申请
    CARBON DIOXIDE ABSORBENT AND METHOD OF USING THE SAME 有权
    二氧化碳吸收剂及其使用方法

    公开(公告)号:US20140127105A1

    公开(公告)日:2014-05-08

    申请号:US14153548

    申请日:2014-01-13

    Abstract: In accordance with one aspect, the present invention provides a composition which contains the amino-siloxane structures I, or III, as described herein. The composition is useful for the capture of carbon dioxide from process streams. In addition, the present invention provides methods of preparing the amino-siloxane composition. Another aspect of the present invention provides methods for reducing the amount of carbon dioxide in a process stream employing the amino-siloxane compositions of the invention, as species which react with carbon dioxide to form an adduct with carbon dioxide.

    Abstract translation: 根据一个方面,本发明提供含有如本文所述的氨基 - 硅氧烷结构I或III的组合物。 该组合物可用于从工艺流中捕获二氧化碳。 此外,本发明提供了制备氨基 - 硅氧烷组合物的方法。 本发明的另一方面提供了使用本发明的氨基 - 硅氧烷组合物作为与二氧化碳反应形成与二氧化碳的加合物的物质的方法中减少二氧化碳量的方法。

    CERAMIC SLURRIES WITH PHOTOREACTIVE-PHOTOSTABLE HYBRID BINDERS

    公开(公告)号:US20210269362A1

    公开(公告)日:2021-09-02

    申请号:US16802632

    申请日:2020-02-27

    Abstract: Ceramic slurries may include ceramic particles, a photoreactive-photostable hybrid binder, and a photoinitiator. The photoreactive-photostable hybrid binder may include a photoreactive organic resin component, a photoreactive siloxane component, and one or more photostable siloxane components. Methods of forming a ceramic part may include curing a portion of a ceramic slurry by exposing the portion of the ceramic slurry to light to form a green ceramic part, and partially firing the green ceramic part to form a brown ceramic part. The brown ceramic part may be sintered at or above a sintering temperature of the ceramic particles to form a ceramic part, wherein sintering includes heating the brown ceramic part to a sufficient temperature to promote reaction bonding that converts silica from the photoreactive-photostable hybrid binder into silicates that bond with the ceramic particles.

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